What happens to the particles
of a liquid when it evaporates?
A. They spread farther apart.
B. They become tightly packed.
C. They stop moving.
D. They stay in the same place.

Answers

Answer 1

Evaporation happens when a liquid substance becomes a gas. When water is heated, it evaporates. The molecules move and vibrate so quickly that they escape into the atmosphere as molecules of water vapor.

There are some particles in a liquid that have enough energy to escape the bonds to the other particles even below boiling point. This means they can move freely and turn into gas particles. The difference between boiling and evaporation is because boiling happens at a certain temperature and evaporation can happen at any temperature below boiling point.

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Answer 2
the answer is a, particles in gases are farther apart than in liquids

Related Questions

Which of the following diagrams is the correct electron dot diagram for Al

Answers

The correct electron dot diagram for Al is Al with three dots. The option A is the correct option.

What is aluminum atom?

Aluminum is one of the element of the periodic table. It belongs to 13th group. The atomic number of aluminum is 13 and mass number is 26. The electronic configuration of aluminum is 1s1 2s2 2p6 3s2 3p1.

Since there are three electron in the lass shell. Therefore to obtain stable electronic configuration aluminium lose three electron. Since, last electronic configuration is 3 p. Thus, it belongs to p block and 3rd period.

The number of electron dot on an element is depend on the valancy of that particular atom. Let's learn with an example of Na. It has 11 as atomic number and have valancy 1. So, the dot present on Na symbol is one. In the same way, the aluminum has 3 valancy. So, the number of dots present is three.

Thus, we concluded that the correct electron dot diagram for Al is Al with three dots. The option A is the correct option.

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25.0 L of an ideal gas at 278 K and 4.11 atm are heated to 393 K with
a new pressure of.7.00 atm. What is the new volume (in L)?

Answers

The new volume (in L) is 12.2 L

What is Boyle's law Formula and Derivation?According to Boyle's law, a gas's pressure will change whenever its volume changes, even when its quantity and temperature remain constant.

Information given:

Volume 1 = 15.0 L

Temperature 1 = 298 K ---------> Temperature 2 = 383 K

Pressure 1 = 3.36 Atm -----------> Pressure 2 = 5.308 Atm

Information they're asking: New Volume 2?

When it comes to ideal gas queries, there are numerous formulae. The combined gas law, which essentially combines all of the gas laws into a single equation, comes to mind as one example. It goes like this: P1V1 / T1 equals P2V2 / T2.We've decided to look for Volume #2, or the volume change that occurs when the temperature rises (as well as the noticeable change in pressure). In order to leave V2 alone on the right side of the equation, the subsequent step is algebraic. When we finish, the equation becomes: P1V1T2 / T1P2 = V2.

Substituting it with numbers (Yay! we were provided Kelvins, that's always a plus), we get;

3.36 Atm * 15.0 L * 383 K = V2  = 12.2 L

298 K * 5.308 Atm

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1. Up to this time , scientists had identified elements by determining the properties of elemental substances . Because the properties of elements differ from the properties of compounds that contain those elements , scientists had used a variety of methods , including the battery , to decompose compounds into elemental substances . How did the spectroscope change the way scientists looked for elements ?

Answers

The spectroscope has changed the way scientists looked for elements in that it allows for the identification of elements from compounds without a need to decompose the compounds.

What is a spectroscope?

A spectroscope also known as a spectrometer is an instrument that produces and analyzes the spectra or absorption lines using visible light.

The spectrometer measures and interprets the electromagnetic spectra that result from the interaction between electromagnetic radiation and matter.

These measurements are obtained or determined from the wavelength or frequency of the radiation.

A spectroscope is used to analyze and study the elemental components of compounds without having to decompose the compounds into elemental substances.

Thus, spectroscopes have proved to be useful in the study of the properties of elements in compounds.

Compounds are formed when two or more elements are combined together.

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This organelle functions in cellular respiration and makes energy
O mitochondria
O lysosome
O endoplasmic reticulum
O Golgi apparatus

Answers

Answer:

mitochondria

Explanation:

mitochondria is an organelles that is used in cellular respiration and makesbenetgy

Use Hess’s Law to calculate the enthalpy change for the reaction.

C2H4(g) + H2(g) → C2H6(g) ∆Hrxn = ?

Given:

C2H4(g) + 3O2(g) → 2CO2(g) + 2H2O(l) ∆Hrxn 1 = -1410.9kJ

2C2H6(g) + 7O2(g) → 4CO2(g) + 6H2O(l) ∆Hrxn 2 = -3119.4kJ

2H2(g) + O2(g) → 2H2O(l) ∆Hrxn 3 = -571.6kJ

Answers

Answer:

∆Hrxn 1 + ∆Hrxn 3 - ∆Hrxn 2 = ?

-1410.9kJ - 571.6kJ + 3119.4kJ = ?

-2801.1kJ

The reaction CO₂(g) + C(s) = 2 CO(g) has Kp = 5.78 at
1200 K.
a. Calculate the total pressure at equilibrium when 4.45 g of CO₂ is introduced into a 10.0-L container and heated to 1200 K in the presence of 2.00 g of graphite.
b. Repeat the calculation of part a in the presence of 0.50 g of graphite.

Answers

Hope this answer helps you a lot ✅✅

An equilibrium constant of acid-base chemistry that is greater than 1 is recovered from.

Answers

A high K value (higher than 1) denotes an equilibrium with more products than reactants, whereas a low K value (less than 1) denotes an equilibrium with more reactants than products.

The equilibrium constant's value reveals whether a reaction is beneficial or unfavorable. Favorable reactions have a Keq value greater than 1, which indicates that energy is liberated throughout the reaction and that the reactants have a higher energy than the products. A spontaneous cell response changes free energy in the negative. The equilibrium constant for these reactions is significantly greater than 1. For these reactions, the value of the standard cell potential is positive.

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What is the absorbance of a solution that absorbs 45.0% of
incident 500nm VIS radiation?

Answers

The absorbance of a solution that absorbs 45.0% of incident 500nm is equal to 0.26.

What is absorbance?

Absorbance can be defined as the logarithm of the ratio of incident light to transmitted light through a sample. Absorbance may also be defined as the negative logarithm of one minus transmittance, as measured on a uniform sample.

If I₀  is the intensity of the incident light  and 'I' is the intensity of the light detected after traveling a distance 'd', the fraction transmitted T, is given by:

[tex]A = log\frac{I_o}{I}[/tex]

Given, the light absorbed by the solution = 45%

The radiation incident on the solution, I₀ = 100 %

The radiation transmitted by the solution = 100 - 45 = 55%

The absorbance of the solution is given by: A = log (I₀/I)

A = log (100/55)

A = 0.26

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When a piece of sodium metal is dropped into a calorimeter filled with water, hydrogen gas evolves. The temperature of the mixture rises because.

Answers

The evolution of hydrogen gas occurs when a piece of sodium metal is dropped into a calorimeter containing water because sodium loses electrons and is oxidized, whereas water is reduced.

Hydrogen gas is created when sodium metal reacts with water, and sodium hydroxide is also created. In this way, one electron is removed from the metal (Na), and an electron is added, turning water into hydrogen gas.

A calorimeter is a device that is used in calorimetry, which is the process of calculating the heat produced by chemical reactions, physical changes, and heat capacity. Among the most popular kinds are titration calorimeters, isothermal micro calorimeters, accelerated rate calorimeters, and differential scanning calorimeters.

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When 0.1 mol of PCls (g) is heated at 78.5 °C in a 1.00 L container, the pressure at
equilibrium is 3.50 x 105 Nm2. Calculate the degree of dissociation of PCIs.

Answers

When 0.1 mol of PCls (g) is heated at 78.5°C in a 1.00 L container, the pressure at equilibrium is 3.50 x 10⁵ Nm² so the degree of dissociation of PCIs is 60%

Dissociation is the breaking up of a compound into simpler constituents that are usually capable of recombining under other conditions.

Here given data is

Temprature = 78.5 °C

Pressure = 3.50 x 10⁵ Nm²

We have to calculate the degree of dissociation of PCI₅ = ?

Then the equation of dissociation of PCl₅ when heated is given below

PCl₅ → PCl₃ + Cl₂

Based on the equation of the dissociation of PCl₅ the 1 mole of PCl₅ decompose to give 1 mole of PCl₃ gas and 1 mole of Cl₂ gas

Hence 1 mole of  PCl₅ dissociates to give 2 mole of gas

So 0.1 mole of PCl₅ will dissociate to give 0.1×2moles of gas = 0.2 moles of gas

At STP the pressure of 0.2 mole of gas is calculated as follow

PV = nRT

Where P = pressure = ?

V = 1.00 L

n = number of moles = 0.2

R = molar gas constant = 0.082 L atm/kmol

T = temprature = (273 + 78.5)K

P = nRT

P = 0.2×0.082×351.5/1

P = 5.76 atm or 5.84×10⁵N/m²

Percentage dissociation of PCl₅ = (3.50×10⁵/5.84×10⁵)×100%

Percentage dissociation of PCl₅ = 60%

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If 275 mL of 0.250 M BaCl₂ is added to 225 mL of 0.125 M Na₃PO₄, how many moles of Ba₃(PO₄)₂ precipitate will be formed? The balanced equation is

3 BaCl₂(aq) + 2 Na₃PO₄(aq) → Ba₃(PO₄)₂(s) + 6 NaCl(aq)

Answers

Taking into account the reaction stoichiometry ,0.0140625 moles of Ba₃(PO₄)₂ can be produced if 275 mL of 0.250 M BaCl₂ is added to 225 mL of 0.125 M Na₃PO₄.

Reaction stoichiometry

In first place, the balanced reaction is:

3 BaCl₂(aq) + 2 Na₃PO₄(aq) → Ba₃(PO₄)₂(s) + 6 NaCl(aq)

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

BaCl₂: 3 moleNa₃PO₄: 2 moles  Ba₃(PO₄)₂: 1 moleNaCl: 6 moles

Definition of molarity

Molar concentration or molarity is a measure of the concentration of a solute in a solution and indicates the number of moles of solute that are dissolved in a given volume.

Limiting reagent

The limiting reagent is one that is consumed first in its entirety, determining the amount of product in the reaction. When the limiting reagent is finished, the chemical reaction will stop.

Amount of moles of each reagent

In this case, you know:

Molarity of BaCl₂= 0.250 MVolume of BaCl₂= 275 mL= 0.275 LMolarity of Na₃PO₄= 0.125 MVolume of Na₃PO₄= 225 mL= 0.225 L

So, the amount of moles of each reagent can be calculated as:

moles of BaCl₂= Volume of BaCl₂× Molarity of BaCl₂

moles of BaCl₂= 0.275 L× 0.250 M

moles of BaCl₂= 0.06875 moles

moles of Na₃PO₄= Volume of Na₃PO₄× Molarity of Na₃PO₄

moles of Na₃PO₄= 0.225 L× 0.125 M

moles of Na₃PO₄= 0.028125 moles

Limiting reagent in this case

To determine the limiting reagent, it is possible to use a simple rule of three as follows: if by stoichiometry 2 moles of Na₃PO₄ reacts with 2 moles of Na₃PO₄, 0.06875 moles of BaCl₂ reacts with how many moles of Na₃PO₄?

amount of moles of Na₃PO₄= (0.06875 moles of BaCl₂× 2 moles of Na₃PO₄)÷ 2 moles of Na₃PO₄

amount of moles of Na₃PO₄= 0.04583 moles

But 0.04583 moles of Na₃PO₄ are not available, 0.028125 moles are available. Since you have less moles than you need to react with 0.06875 moles of BaCl₂, Na₃PO₄ will be the limiting reagent.

Moles of Ba₃(PO₄)₂ formed

Considering the limiting reagent, the following rule of three can be applied: if by reaction stoichiometry 2 moles of Na₃PO₄ form 1 mole of Ba₃(PO₄)₂, 0.028125 moles of Na₃PO₄ form how many moles of Ba₃(PO₄)₂?

amount of moles of Ba₃(PO₄)₂= (0.028125 moles of Na₃PO₄× 1 mole of Ba₃(PO₄)₂)÷ 2 moles of Na₃PO₄

amount of moles of Ba₃(PO₄)₂= 0.0140625 moles

Then, 0.0140625 moles of Ba₃(PO₄)₂ can be produced.

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4. A balloon has a volume of 6.5 L at a pressure of 106 kPa and a temperature of 19°C. If thevolume decreases to 3.6 L and the temperature rises to 27°C, what is the new pressure?

Answers

Answer:

1.95 atm or 197 kPa*

Explanation:

To find the new pressure, you need to use the Combined Gas Law:

[tex]\frac{P_1V_1}{T_1}=\frac{P_2V_2}{T_2}[/tex]

In this equation, "P₁", "V₁", and "T₁" represent the initial pressure, volume, and temperature. "P₂", "V₂", and "T₂" represent the new pressure, volume, and temperature. Before using the equation, you need to:

(1) convert the pressure from kPa to atm (101.3 kPa = 1 atm)

(2) convert the temperatures from Celsius to Kelvin (°C + 273 = K)

You can then plug these values into the equation and solve for "P₂".

P₁ = 106 kPa / 101.3 = 1.05 atm                  P₂ = ? atm

V₁ = 6.5 L                                                     V₂ = 3.6 L

T₁ = 19°C + 273 = 292 K                              T₂ = 27°C + 273 = 300 K

[tex]\frac{P_1V_1}{T_1}=\frac{P_2V_2}{T_2}[/tex]                                               <----- Combined Gas Law

[tex]\frac{(1.05 atm)(6.5L)}{292K}=\frac{P_2(3.6L)}{300K}[/tex]                            <----- Insert values

[tex]0.0234=\frac{P_2(3.6L)}{300K}[/tex]                                       <----- Simplify left side

[tex]7.01 = P_2(3.6L)[/tex]                                         <----- Multiply both sides by 300

[tex]1.95 = P_2[/tex]                                                   <----- Divide both sides by 3.6

*1.95 atm x 101.3 = 197 kPa

197 kPa or 1.95 atm is a new pressure, you must apply the Combined Gas Law to determine the new pressure.

What is gas law?

The starting pressure, volume, and temperature are denoted in this equation by "P1", "V1," and "T1," respectively. The new pressure, volume, and temperature are denoted by the letters "P2", "V2," and "T2". You must: before applying the equation:

(1) convert pressure to atm (101.3 kPa = 1 atm)

(2) Use the formula °C + 273 to convert temperatures from Celsius to Kelvin.

After that, you may solve for "P2" by plugging these numbers into the equation.

P1 = 101.3 kPa / 106 kPa = 1.05 atm P₂ = ? atm

V₁ = 6.5 L V₂ = 3.6 L

T₁ = 19°C + 273 = 292 K T₂ = 27°C + 273 = 300 K

Therefore, 1.95 atm X 101.3 = 197 kPa

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Help please, it will mean a lot

Answers

Chemical formula Na2CO3 is ionic compound and CO is covalent compound.

The chemical formula of a compound is a symbolic representation of its chemical composition. The components of a compound's molecules are identified in its chemical formula, as well as the ratio in which its atoms combine to produce those molecules. For instance, a molecule of water has the molecular formula H2O, which indicates that it contains two hydrogen atoms and one oxygen atom.

A substance's molecular formula can be used to estimate the amount of its constituent constituents. In molecular formulae, the elements are denoted by the symbols from the periodic table, and the number of atoms in each element is denoted by a subscript. For instance, the molecular formula for glucose is C6H12O6.

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What is the freezing point (in degrees Celcius) of 3.27 kg of water if it contains 193.9 g of CaBr₂? The freezing point
depression constant for water is 1.86 °C/m and the molar mass of CaBr₂ is 199.89 g/mol.

Answers

The solution's freezing point is 1.65°C.

What is freezing point?

The freezing point depression formula is: Adding a solute to the original solvent causes the freezing point to decrease.

ΔT = kf×m×i

Where m is the molality of the solution (Moles CaBr2 -solute- / kg water -solvent), Kf is the freezing point depression constant of the solvent (1.86°C/m), and I is the Van't Hoff factor.

Molality of the solution is:

moles CaBr₂ = 193.9g ₓ (1mol / 199.89g) = 0.97 moles

Molality is:

0.97 moles CaBr₂ / 3.27kg water = 0.296m

For CaBr2, the van't hoff factor indicates how many moles of solute are generated following the dissolution of one mole of solid solute:

CaBr₂(s) → Ca²⁺ + 2Br⁻

1 mole of solid solute yields 3 moles of ions, and the Van't Hoff factor is 3.

ΔT = kf×m×i

ΔT = 1.86°C/m×0.296m×3

ΔT = 1.651

Water loses 1.65°C of its freezing point. Water's 0°C freezing point means that

The solution's freezing point is 1.65°C.

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if the dissolution of borax in water is spontaneous, is the change in enthalpy positive or negative - or are both signs possible?

Answers

Specific heat capacity of a substance is the amount of heat required to raise the temperature by one degree Celsius of one gram of a substance. Therefore,  the change in enthalpy will be negative.

What is Enthalpy?

Enthalpy term is basically used in thermodynamics to show the overall energy that a matter have. Mathematically, Enthalpy is directly proportional to specific heat capacity of a substances.

Mathematically,

Enthalpy=mass of solution× specific heat capacity of solution ×Change in temperature.

Any reaction which is spontaneous, then the enthalpy related to this type of reaction is always negative that is reaction is always exothermic.

Therefore,  the change in enthalpy will be negative.

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if u have 100 ml of water in a foam cup or 100 ml of water in a can which variable gets manipulated

Answers

The variable that gets manipulated is Aluminium.

Hot water has more energy than cold water so the sugar dissolves faster in hot water than in cold water. When water is heated, the molecules gain energy and move faster. Because they move faster, they come into contact with the sugar more often dissolving it faster. I can do it. Changing the amount of water will affect the plant growth rate values.

Therefore, we know that the amount of water is the independent variable and the plant growth rate is the dependent variable. The energy from the hydrothermal molecules makes the solid more soluble. In hot water, molecules move more so there are more collisions between water molecules and solids.

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1 Scenario
Body systems work together to maintain the entire organism. The table below portrays data that was
taken from a student before and after that student ran a mile.
2 External Data
Observations
body temperature (internal)
pulse/heart rate
respiration rate
sweating
Starting Data
98.6°F (37°C)
80 bpm
18 bpm
normal
91°F (33°C)
Ending Data
99.1°F (38°C)
120 bpm
28 bpm
increase
92.5°F (35°C)
claim:
Evidence:
reasoning:

Answers

Body systems work together to maintain the entire organism then the body response to the running mile is then the breathing may become heavy as well as pulse quicken as heart pump harder

According to the given data body temprature from starting it is 98.6°F (37°C) and the ending data is 99.1°F (38°C) and pulse and heart rate is from starting 80 bpm and ending it is 120 bpm and respiration rate is from starting 18 bpm and the ending it is 28 bpm and sweating in starting is normal and in the ending it is increase and skin temprature in starting is 91°F (33°C) and ending is 92.5°F (35°C) so when the student start to run the heat or temprature in the body is normal but when the student run a mile the temprature as well as pulse and heart rate and respiration rate is also increases

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Please ASAP f the two points on the globe’s surface where the pencil passes through represent the North Pole and the South Pole, what does the entire pencil represent?
Hold the top of the pencil so that it is pointing straight up, and then tilt the pencil a little to the right. What does the tilting of the pencil represent?
Slowly turn the pencil in your hands so that the globe spins from right to left. What does this movement represent?
2. You will need a lamp and a dark room and your model of Earth for this exercise. The lamp will represent the sun.

Hold your model so that the pin representing your home faces the lamp. What does this represent?
While holding the pencil loosely, slowly spin the globe to the right until your home faces away from the lamp. What does this represent?
Now complete the rotation of your model by spinning it slowly until the pin again faces the lamp. What does one entire rotation represent? How many hours would it take Earth to complete this rotation?

Answers

The pencil is the earth that rotates about its axis to give day and night.

What is a model?

A model can be regarded as a representation of reality. The model can be used for the purpose of prediction or for the purpose of explanation. In this case, we are trying to use the model for the purpose of explanation.

The whole pencil can be said to represent the globe and the lamp can stand for the sun. The part of the pencil that is exposed to the amp is the part of the earth that is exposed to the sun and has daylight while the other part of the globe would experience darkness.

The rotation of the pencil would denote the rotation of the earth that leads to the occurrence of day and night.

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Q4.
A chemical is soluble in water but insoluble in benzene. As a consequence, benzene
may be used to determine its density. The density of benzene is 0.879/g/L. Calculate the
density of the sample.
(a) Weight of empty flask
(b) Weight of flask + sample
(c) Weight of flask + sample + benzene to fill
(d) Weight of flask + benzene (without sample)
8.862 +0.002 g
10.986 ± 0.002 g
30.086 +0.002 g
29.172 0.002 g

Calculate the percentage error in the density of the sample.

Answers

Organic Chemistry Laboratory Manual 7A and 7B V.4.1

The formula for percent error is the absolute value of the difference between the measured value and the actual value divided by the actual value multiplied by 100. The purpose of calculating percent error is to analyze how close the measured value is to the actual value. teeth. This is part of a comprehensive error analysis.

For most fields, the percentage error is always expressed as a positive number but for other fields, it is legal to have positive or negative values. Sampling error is calculated by dividing the standard deviation of the population by the square root of the sample size and multiplying the result by a z-score based on the confidence interval.

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Carbon-22 has a half-life of 3 days. What is the rate of decay of Carbon-22?

Answers

Carbon has a half-life of 5,730 years.

The rate of deterioration, or pastime, of a sample of a radioactive substance, is lower within the wide variety of radioactive nuclei in line with unit time.

The decay rate is expressed as a percent. We convert it to decimal through surely reducing the percentage and dividing it by means of 100. Then calculate the decay element b = 1-r. for example, if the rate of deterioration is 25%, the exponential characteristic's decay price is zero.25 and the decay thing b = 1- 0.25 = 0. seventy-five.

The rate of nuclear decay is also measured in terms of half of-lives. The 1/2-lifestyles is the amount of time it takes for a given isotope to lose half of its radioactivity. If a radioisotope has a 1/2-existence of 14 days, half of of its atoms will have decayed within 14 days.

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how is polarity designated in a molecule

Answers

Due to comparable differences in electronegativity of different elements, partial positive and negative charges developed, hence polarity designated in a molecule.

The terms "polar" and "nonpolar" normally seek advice from covalent bonds. To determine the polarity of a covalent bond the usage of a numerical manner, find the distinction among the electronegativity of the atoms; if the end result is between 0.4 and 1.7, then, generally, the bond is polar covalent.

When the atoms linked by way of a covalent bond are distinct, the bonding electrons are shared, however now not similar. rather, the bonding electrons are extra attracted to at least one atom than the alternative, giving upward thrust to a shift of electron density closer to that atom.

This unequal distribution of electrons is referred to as a polar covalent bond, characterized by means of a partial nice fee on one atom and a partial negative price on the other. The atom that attracts the electrons extra strongly acquires the partial poor fee and vice versa.

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A gas at 5.00 atm pressure was stored in a tank during the winter at 5.0 °C. During the summer, the temperature in the storage area reached 30.9 °C. What was the pressure in the gas tank then?

Answers

A gas at 5.00 atm pressure was stored in a tank during the winter at 5.0 °C. During the summer, the temperature in the storage area reached 30.9 °C. the pressure in the gas tank then was 5.43 atm

According to gay lussac law :

P1 / T1 = P2 / T2

P1 = 5 atm

P2 = ?

T1 = 273 + 5 = 278 K

T2 = 273 + 30.9 = 303.9 K

now, P1 / T1 = P2 / T2

5 / 278 = P2 / 303.9

P2 = 5.43 atm

Thus, A gas at 5.00 atm pressure was stored in a tank during the winter at 5.0 °C. During the summer, the temperature in the storage area reached 30.9 °C. the pressure in the gas tank then was 5.43 atm

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2.5.2 Test (CST): Computer-Scored Unit Test
Question 3 of 25
Which characteristic gives the most information about what kind of element
an atom is?
OA. The number of electrons
B. The number of neutrons
C. The atomic number
OD. The atomic mass
k

Answers

The number of positive charge units (protons) in the nucleus is defined as the atomic number, which is the single most significant property of an atom. Atomic numbers are typically represented by the symbol Z.

What are an atom and atomic number?

A component of an element is an atom. A specific element only has one kind of atom per atom. Protons, neutrons, and electrons, which are subatomic particles, make up the remainder of an atom. Chemical reactions can result in the combination of elements to create molecules. The number assigned to a chemical element by its atomic number in the periodic system places the elements in ascending order of the number of protons in their nuclei.

The number of positive charge units (protons) in the nucleus is defined as the atomic number, which is the single most significant property of an atom. Atomic numbers are typically represented by the symbol Z.

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how many molecules in 12 grams of h20

Answers

There are 5.02 *10²² molecules in 12 grams of water.

What is a molecule?

This refers to two or more atoms joined by chemical bonds. egH₂0.

What is molecular weight?

This refers to the total weights of the individual atoms that comprise the molecule.

How to calculate number of molecules in a chemical compound.

.Calculate the molecular weight of the substance for one mole.

. Divide the molar mass value by the molecular mass.

. Finally, multiply by the Avogadro constant.

Recall,

1 mole of a subtance= 6.022×10²³ atoms(Avogadro's Law)

Hence calculating the number of molecules in 12g of H₂0 we have:

1 mole of H₂0=(1*2) +(8*2)

                      18g

18g of  H₂0 contains 6.022×10²³ atoms

Then 12g of  H₂0 contains:

number of molecules=Number of atoms /mass of H₂0

                                    =6.022×10²³/12

                                     =5.02×10²²

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Which of the following pairs of liquids are likely to be miscible? Check all that apply. Which of the following pairs of liquids are likely to be miscible?Check all that apply. C8H18 and C6H6 Na3PO4 , and H2O H2SO4 and H2O CS2 and CCl4

Answers

For miscible : Poler will be miscible in polar.

                       Non polar will miscible in non polar .

1) C8H18 and C6H6      ( Both are non polar , miscible)

2) H2SO4 and H2O      (  Ionic and  polar  ,  miscible )

3) CS2 and CCl4            ( Both are non -polar , miscible )

4) Na3PO4 , and H2O      ( Salt ionic and polar , miscible )

A liquid is a almost incompressible fluid that conforms to the form of its field however keeps a regular extent impartial of strain. As such, it's miles one of the 4 essential states of remember, and is the only country with a specific quantity but no constant shape.

The atoms in a liquid are loose to transport around, although they can't pass closer collectively or farther apart. This means a liquid flows and modifications shape to fill the space around it.

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Explain how flame tests could be used to perhaps identify, which metal ions are present in an unknown solution.

Answers

An unknown metal is exposed to flame by chemists during a flame test. Based on the type of metal present in the substance, the flame will change color. Once the chemical is identified, the scientists can proceed.

Which metals can be identified by flame test?

The simplest method for determining whether group 1 metal ions are present in the chemical is a flame test. There are several effective methods for other metals, but a flame test will give you a better idea of what to look for.

Chemists place an unidentified metal under a flame as part of a flame test. Depending on whatever metal is present in the substance, the flame will take on a variety of colors. Thus, the mystery material can be identified by the scientists.

Metals have observable characteristics that are particular to each one, much like all other elements, such as density, boiling temperature, melting point, and specific heat. These characteristics can be utilized to identify unknown metal samples since they are special.

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L
Apply Concepts
6. Look at the illustration. What causes
the phase change of water shown in
the illustration? How do you know?
Chapter 1,1anson 3 Check What are solids, liquids, and gases?

Answers

The phase change of water is water particle to evaporate forming water vapor

When water changes state in the water cycle and the total number of water particles remain the same and the changes of state include melting, sublimation, evaporation, freezing, condensation and deposition and heating the water in the first beaker causes the water particles to evaporate and forming water vapor and the particle are far apart and on a molecular level the intermolecular forces between the water molecule are decreasing and the heat is providing enough for the water molecule to overcome these attractive forces and all changes involve either an increase or decrease of intermolecular forces

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An atom of an element x has 81 electrons and 124 neutrons
A how many protons has it
B what is it's mass number
C what is the atomic number of x ​

Answers

Answer:

A its has 63 protons

B mass number is also 124

C Atomic number of x is 63

Explanation:

Element x has 63 protons with mass number of 124 and atomic number of 63

What is the frequency of an orange light with a wavelength of 483nm

Answers

Answer: frequency= speed of light * wavelength

1.44799757×10*11

Explanation:

How many shells are there in the Bohr model of a hydrogen atom?

Answers

Answer:

Explanation:

When looking at the periodic table, the period (row) corresponds to the number of shells or PEL (principled energy level).

Hydrogen is in the first period and thus has one shell.

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